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Tresset [83]
4 years ago
5

2950m in km is what plz answer this

Mathematics
2 answers:
DENIUS [597]4 years ago
7 0
1km=1000m so you will divide 2950 on 1000
and the result would be 2.95km :)
AVprozaik [17]4 years ago
6 0
The answer is 2.95km
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I need help pleaseeeeeeee
Greeley [361]

Answer:

1) additive identity

2) associative property of multiplication

3) commutative property of addition

4) multiplicative identity

5) associative property of addition

6) commutative property of multiplication

Step-by-step explanation:

5 0
3 years ago
Explain to me what they are asking me
Serggg [28]

to plot start at the orgin (0,0) and move 1/3 right and 3 down.

7 0
3 years ago
Read 2 more answers
An object is launched directly upward with an initial velocity of 64 feet per second from a platform 80 feet high. What will be
LekaFEV [45]

Answer:

a) 63.6 ft

b) 1.99 seconds

c) 4.98 seconds

Step-by-step explanation:

a) The object will reach maximum height when its final velocity, v, is 0 m/s.

We apply one of Newton's equations of motion to solve this:

v^2 = u^2 - 2gh

where u = initial velocity = 64 ft/s

g = acceleration due to gravity = 32.2 ft/s

h = height reached by object.

Note: the equation has a negative sign because the object is going upwards, against gravity.

Hence:

0^2 = 64^2 - 2*32.2*h\\\\=> 64.4h = 4096\\\\h = 4096 / 64.4\\\\h = 63.6 ft

The object is now 63.6 ft above the platform (143.6 ft above the ground).

b) Time taken to get to that height can be gotten by using another one of Newton's equations:

v = u - gt

=> 0 = 64 - 32.2t

32.2t = 64\\\\=> t = 64 / 32.2 \\\\t = 1.99 secs

It took the object 1.99 secs to get to that height.

c) When the object begins falling to ground level, it is at a height, h =  143.6 ft and begins moving at initial velocity, u = 0 m/s.

Applying another of Newton's equations of motion, we have that:

h = ut + \frac{1}{2}gt^2

where t is the time taken to hit the floor after it begins its descent.

Therefore,

143.6 = 0*t + \frac{1}{2}*32.2t^2\\ \\143.6 = 16.1t^2\\\\t^2 = 143.6 / 16.1\\\\t^2 = 8.92\\\\t = \sqrt{8.92} \\\\t = 2.99 secs

This is the time it will take the object to hit the floor after it begins its descent.

Therefore, the total time it will take for the object to hit the ground after it is launched will be:

T = time taken to reach maximum height + time taken to hit the floor after it begins descending

T = 1.99 + 2.99

T = 4.98 seconds

6 0
4 years ago
Classify the expression as a monomial, a binomial, a trinomial, or not a polynomial. 2b^3 − 8s^4 + 6z
Nadusha1986 [10]

Answer:

Trinomial

Step-by-step explanation:

Because it is broken up in three terms and trinomial means three terms

4 0
3 years ago
A car averaged 72 kph .on a trip if the car travelled for 9 hours how far did it go
NISA [10]
Answer:

648 km

Explanation:

d = v x t
d = 72 x 9
d = 648 km
3 0
3 years ago
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